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1.
Spine (Phila Pa 1976) ; 39(6): E369-78, 2014 Mar 15.
Artículo en Inglés | MEDLINE | ID: mdl-24384655

RESUMEN

STUDY DESIGN: Animal experimental study. OBJECTIVE: To evaluate a novel quantitative imaging technique for assessing disc degeneration. SUMMARY OF BACKGROUND DATA: T2-relaxation time (T2-RT) measurements have been used to assess disc degeneration quanti-tatively. T2 values correlate with the water content of intervertebral disc tissue and thereby allow for the indirect measurement of nucleus pulposus (NP) hydration. METHODS: We developed an algorithm to subtract out magnetic resonance imaging (MRI) voxels not representing NP tissue on the basis of T2-RT values. Filtered NP voxels were used to measure nuclear size by their amount and nuclear hydration by their mean T2-RT. This technique was applied to 24 rat-tail intervertebral discs (IVDs), which had been punctured with an 18-gauge needle according to different techniques to induce varying degrees of degeneration. NP voxel count and average T2-RT were used as parameters to assess the degeneration process at 1 and 3 months postpuncture. NP voxel counts were evaluated against radiograph disc height measurements and qualitative MRI studies on the basis of the Pfirrmann grading system. Tails were collected for histology to correlate NP voxel counts to histological disc degeneration grades and to NP cross-sectional area measurements. RESULTS: NP voxel count measurements showed strong correlations to qualitative MRI analyses (R = 0.79, P < 0.0001), histological degeneration grades (R = 0.902, P < 0.0001), and histological NP cross-sectional area measurements (R = 0.887, P < 0.0001).In contrast to NP voxel counts, the mean T2-RT for each punctured group remained constant between months 1 and 3. The mean T2-RTs for the punctured groups did not show a statistically significant difference from those of healthy IVDs (63.55 ms ± 5.88 ms mo 1 and 62.61 ms ± 5.02 ms) at either time point. CONCLUSION: The NP voxel count proved to be a valid parameter to assess disc degeneration quantitatively in a needle puncture model. The mean NP T2-RT does not change significantly in needle-puncture-induced degenerated IVDs. IVDs can be segmented into different tissue components according to their innate T2-RT.


Asunto(s)
Degeneración del Disco Intervertebral/diagnóstico , Disco Intervertebral/patología , Imagen por Resonancia Magnética , Algoritmos , Animales , Modelos Animales de Enfermedad , Interpretación de Imagen Asistida por Computador , Degeneración del Disco Intervertebral/patología , Masculino , Variaciones Dependientes del Observador , Valor Predictivo de las Pruebas , Ratas , Ratas Desnudas , Reproducibilidad de los Resultados , Índice de Severidad de la Enfermedad , Factores de Tiempo
2.
Spine (Phila Pa 1976) ; 39(3): 198-206, 2014 Feb 01.
Artículo en Inglés | MEDLINE | ID: mdl-24253790

RESUMEN

STUDY DESIGN: Animal in vivo study. OBJECTIVE: To test the capability of high-density collagen gel to repair annular defects. SUMMARY OF BACKGROUND DATA: Annular defects are associated with spontaneous disc herniations and disc degeneration, which can lead to significant morbidity. Persistent annular defects after surgical discectomies can increase reherniation rates. Several synthetic and biological materials have been developed for annular repair. This is the first study to test an injectable biomaterial in vivo. METHODS: We punctured caudal intervertebral discs in 42 athymic rats, using an 18-gauge needle to create an annular defect. High-density collagen (HDC), either alone or cross-linked with riboflavin (RF), was injected into the defect. There were 4 separate study groups: HDC, HDC cross-linked with either 0.25 mM RF or 0.50 mM RF, and a negative control that was punctured and not treated. The animals were followed for 5 weeks; radiographs were used to assess disc heights and magnetic resonance images were used to evaluate degenerative changes. We developed an algorithm on the basis of T2-relaxation time measurements to assess the size of the nucleus pulposus. Tails were collected for histological analysis to evaluate disc degeneration and measure the cross-sectional area of the nucleus pulposus. RESULTS: After 5 weeks, the control and the uncross-linked HDC groups both showed signs of progressive degenerative changes with minimal or no residual nucleus pulposus tissue in the disc space. Cross-linking significantly improved the ability of HDC gels to repair annular defects. The 0.50 mM RF cross-linked group showed only a slight decrease in nuclear tissue when compared with healthy discs, with no signs of intervertebral disc (IVD) degeneration. The annulus fibrosus was partially repaired by a fibrous cap that bridged the defect. Host fibroblasts infiltrated and remodeled the injected collagen. CONCLUSION: HDC is capable of repairing annular defects induced by needle puncture. The stiffness of HDC can be modified by riboflavin cross-linking and seems to positively affect the repair mechanism. These results need to be replicated in a larger animal model. LEVEL OF EVIDENCE: N/A.


Asunto(s)
Colágeno/administración & dosificación , Modelos Animales de Enfermedad , Desplazamiento del Disco Intervertebral/tratamiento farmacológico , Desplazamiento del Disco Intervertebral/patología , Cola (estructura animal)/efectos de los fármacos , Cola (estructura animal)/patología , Animales , Geles , Inyecciones Espinales , Masculino , Ratas , Ratas Desnudas
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